Showing posts with label RGPV 4TH SEM SYLLABUS. Show all posts
Showing posts with label RGPV 4TH SEM SYLLABUS. Show all posts
META TAGS:-RGPV EC 4TH SEM SYLLABUS I RGTU ELECTRONICS CIRCUIT SYLLABUS I EC-404 ELECTRONICS CIRCUIT SYLLABUS I RGTU EC 4TH SEM ELECTONICS CIRCUIT SYLLABUS I DOWNLOAD RGPV ELECTRONICS CIRCUIT SYLLABUS I RGPV EC 4TH SEM ELECTRONICS CIRCUIT SYLLABUS I RGPV BHOPAL ELECTRONIC CIRCUIT SYLLABUS I RGPV EC 4TH SEM ELECTRONIC CIRCUIT SYLLABUS I ECE 4TH SEM ELECTRONICS & COMMUNICATION SYLLABUS I ELECTRONICS CIRCUIT SYLLABUS I ANALOG CIRCUIT SYLLABUS I ANALOG ELECTRONICS SYLLABUS
RAJIV GANDHI PROUDYOGIKI VISHWAVIDYALAYA, BHOPAL
PROGRAMME: ELECTRONICS AND COMMUNICATION
ELECTRONICS CIRCUITS EC-404
UNIT I
Amplifier Basics:Transistor as an amplifier,load line,Q-point & its selection criteria,designing of fixed bias and self-bias, stability of biasing circuits, calculation of stability factor.
Transistor at low frequency:frequency response, bandwidth, h-parameter analysis of CC, CB and CE configuration, simplified model, gain and impedance calculation of single stage amplifier.
Transistor at high frequency:high frequency model (hybrid-π), Parameters and their definition,Miller capacitance and its effect on voltage gain,
UNIT II
Feedback amplifier:positive and negative feedback loop gain, effect of negative feedback on gain stability, distortion, bandwidth, input and output impedance of amplifier, types of feedback(voltage, current, series and shunt) and their analysis.
Oscillators:condition of sustained oscillation, RC phase shift, LC (Hartley and Collpit) Oscillators,Wein Bridge, Negative resistance (Tunnel diode and UJT) oscillators, crystal oscillators.
UNIT III
Power amplifier:classification, operation, analysis and design of Class A, Class B, Class-AB,Class C, transformer coupled, push pull and complementary symmetry amplifiers, power dissipation in transistors (Pdmax rating) and efficiency calculations.Tuned amplifier and its applications, Q factor, selectivity and bandwidth, effect of loading, double tuning (synchronous and stagger)
UNIT IV
Cascade amplifiers:Calculation of gain, Input and output impedance, Effect of Cascading on bandwidth, Transformer, RC and direct-coupled amplifier and their performance.
Darlington connection:equivalent circuit and Calculation of gain and impedances,
Cascade amplifier:advantage,circuit diagram and analysis, feedback pair and applications of BIFET,Bootstrapping technique.
Differential amplifier -configuration, transfer characteristics, DC analysis, h-parameter analysis,differential and common mode gain, CMRR, constant current source and current mirror, level shift.
UNIT V
Operational amplifier:(IC741), specifications, ideal and practical characteristics, frequency response, unity gain bandwidth, limitations, slew rate and its effect on full power bandwidth, input offset voltage, bias and offset currents, compensation.
Applications of Op-Amp: Inverting and non-inverting amplifier Analog computation, summer(inverting and non-inverting), averager, integrator, differentiator, scalar, sign changer, phase changer,multiplier, buffer, Differential amplifier, instrumentation amplifier, comparator, Schmitt trigger,precision rectifier, log and antilog amplifier, voltage-to-current and current-to-voltage converter.
REFERENCE BOOKS:
- Millman and Halkias : Integrated electronics, TMH
- Gayakwad ; OPAMP and Linear Integrated Circuits, Pearson Education
- Boylestad and Nashelsky : Electronic Devices and Circuit Theory, PHI
- Sendra and Smith : Microelectronics, Oxford Press
- Graham Bell : Electronic Devices and Circuits , PHI
- Donald A Neamen : Electronic Circuits Analysis and Design, TMH
- Salivahanan et al : Electronic Devices and Circuits, TMH
META TAGS:-RGPV ECE 4TH SEM DIGITAL ELECTRONICS SYLLABUS I RGTU EC 4TH SEM DCS SYLLABUS I DOWNLOAD RGPV DCS SYLLABUS I RGTU ELECTRONICS AND COMMUNICATION DCS SYLLABUS I DIGITAL ELECTRONICS SYLLABUS I RGPV DIGITAL ELECTRONICS SYLLABUS I RGTU BHOPAL EC 4TH SEM SYLLABUS I RGTU EC DCS SYLLABUS I DIGITAL ELECTRONICS SYLLABUS I RGTU SYLLABUS I RGPV DIGITAL ELECTRONICS SYLLABUS I RGPV EC 4TH SEM DIGITAL ELECTRONICS SYLLABUS
RAJIV GANDHI PROUDYOGIKI VISHWAVIDYALAYA, BHOPAL
PROGRAMME: ELECTRONICS AND COMMUNICATION
PROGRAMME: ELECTRONICS AND COMMUNICATION
DIGITAL ELECTRONICS EC-403
UNIT I
Review of Number systems and Binary codes:Binary arithmetic ,addition,subtraction, multiplication and division algorithms.
Boolean algebra:theorems and functions,Simplification of Boolean functions,minimization techniques, Karnaugh's map method, Quine and McCluskey's method,realization of various binary functions using AND ,OR ,NOT,XOR logic gates.
UNIT II
Universal gates:NAND, NOR, realization of Boolean function using universal gates. Half and full adder, half and full subtractor, Series and parallel adder, BCD adders, look-ahead carry generator, Decoders, Encoders, multiplexers and de-multiplexers. Analysis and design of combination circuits,realization of various Boolean functions using NAND, NOR gates and Multiplexers.
UNIT III
Multivibrators:Astable,Monostable and bistable multivibrators,555 timer chip & its application in multivibrators.
Flip-Flops:R-S,Clocked R-S,T,D,J-K,race around problem,Master-slave J-K.,State & Excitation Tables Shift registers and
counters:synchronous and asynchronous counters,Binary ripple counter,up-down counter, Johnson and ring counter, Analysis and Design of Sequential Circuits.
UNIT IV
Semiconductor memories:Organization and construction of RAM, SRAM, DRAM, RAMBUS ROM, PROM, EPROM, EEPROM. PAL and PLAs etc
UNIT V
Logic families:RTL,DTL,TTL,ECL,IIL,PMOS, NMOS and CMOS logic etc. Interfacing between TTL and MOS, vice-versa.
REFERENCE BOOKS:
- M. Mano : Digital Logic and Computer Design, Pearson Education
- W.H. Gothman : Digital Electronics, PHI.
- Millman and Taub : Pulse, Digital and Switching Waveforms, TMH
- Salivahanan and Ari Vahagan : Digital Circuits and Design, Vikas Publishing House
- Leach and Malvino : Digital Principles and Applications, TMH
- Rajkamal : Digital Systems – Priciples and Design, Pearson Education
META TAGS:-RGTU EC 4TH SEM SYLLABUS I ELECTRONICS AND COMMUNICATION 4TH SEM SYLLABUS I RGPV EC 4TH SEM CONTROL SYSTEM SYLLABUS I RGTU EC 4TH SEM CONTROL SYSTEM SYLLABUS I DOWNLOAD RGPV EC 4TH SEM SYLLABUS I CONTROL SYSTEM SYLLABUS I EC-402 CONTROL SYSTEM SYLLABUS I RGTU CONTROL SYSTEM SYLLABUS I RGPV EC 4TH SEM CONTROL SYSTEM SYLLABUS I RGPV EC 4TH SEM CONTROL SYSTEM SYLLABUS I RGPV ELECTRONICS AND COMMUNICATION 4TH SEM SYLLABUS
RAJIV GANDHI PROUDYOGIKI VISHWAVIDYALAYA, BHOPAL
PROGRAMME: ELECTRONICS AND COMMUNICATION
CONTROL SYSTEMS EC-402
UNIT I
Basic Control System Terminology and Classification of control System,Examples of control System ,Transfer Function of Linear Control System, Block Diagram Representation, Signal flow Graph Techniques.
Mathematical Modeling of Electrical Network: AC and DC Servomotors, Error Detector, Stepper Motor, Optical Encoder, Linearization.
UNIT II
Sensitivity of control Systems:Effects of Feedback on gain and time constant,pole location, bandwidth,Sensitivity,Stability,Disturbance signal,Control over System Dynamics by use of Feedback.
Time Response Analysis- Standard Test Signals,Time Response of 1st Order System, Model of Prototype DC Position Control System, Time Response of Prototype 2nd Order System Performance Specification of 2nd Order System, Steady-State Errors and Error Constants, Effects of Additions of Poles and Zeros to Open Loop and Closed Loop System, Design Specification of 2nd Order System and Higher-Order System, Performance Indices, Optimal Control System.
UNIT III
Time Domain Stability Analysis-Concept of Stability of Linear Systems,Effects of Location of Poles on Stability, Necessary Conditions for Stability, Routh-Hurwitz Stability Criteria,Relative Stability Analysis,Root Locus Concept,Guidelines for Sketching Root-Locus,Frequency Domain Stability Analysis-Performance Specification in Frequency Domain,Co-relation between frequency Domain an Time Domain,Bode Plot, Minimum-Phase and Non-Minimum Phase System,Polar Plots,Inverse Polar Plot,Nyquist Stability Criterion, Assessment of Relative Stability (Phase Margin, Gain Margin and Stability), Constant-M and N Circle, Nichols Chart.
UNIT IV
Approaches to System Design:Types of Compensation,Design of Phase-Lag, Phase Lead and Phase Lead-Lag Compensators in Time and Frequency Domain, Proportional, Derivative, Integral and PID Compensation.
UNIT V
Concept of State,State Variables and State Model:State Space Representation of Systems, Block Diagram for State Equation,Transfer Function Decomposition,Solution of State Equation, Transfer Matrix, Relationship between State Equation and Transfer Function, Controllability and Observability. Basic Control System Terminology and Classification of control System,Examples of control System ,Transfer Function of Linear Control System, Block Diagram Representation, Signal flow Graph Techniques.
Mathematical Modeling of Electrical Network: AC and DC Servomotors, Error Detector, Stepper Motor, Optical Encoder, Linearization.
UNIT II
Sensitivity of control Systems:Effects of Feedback on gain and time constant,pole location, bandwidth,Sensitivity,Stability,Disturbance signal,Control over System Dynamics by use of Feedback.
Time Response Analysis- Standard Test Signals,Time Response of 1st Order System, Model of Prototype DC Position Control System, Time Response of Prototype 2nd Order System Performance Specification of 2nd Order System, Steady-State Errors and Error Constants, Effects of Additions of Poles and Zeros to Open Loop and Closed Loop System, Design Specification of 2nd Order System and Higher-Order System, Performance Indices, Optimal Control System.
UNIT III
Time Domain Stability Analysis-Concept of Stability of Linear Systems,Effects of Location of Poles on Stability, Necessary Conditions for Stability, Routh-Hurwitz Stability Criteria,Relative Stability Analysis,Root Locus Concept,Guidelines for Sketching Root-Locus,Frequency Domain Stability Analysis-Performance Specification in Frequency Domain,Co-relation between frequency Domain an Time Domain,Bode Plot, Minimum-Phase and Non-Minimum Phase System,Polar Plots,Inverse Polar Plot,Nyquist Stability Criterion, Assessment of Relative Stability (Phase Margin, Gain Margin and Stability), Constant-M and N Circle, Nichols Chart.
UNIT IV
Approaches to System Design:Types of Compensation,Design of Phase-Lag, Phase Lead and Phase Lead-Lag Compensators in Time and Frequency Domain, Proportional, Derivative, Integral and PID Compensation.
UNIT V
REFERENCE BOOKS:
- B. C Kuo : Automatic Control System, Prentice Hall of India, New Delhi.
- Nagrath and Gopal : Control System Engineering, New Age International Publishers.
- Samarjit Ghose : Control Systems Theory and Applications, Pearson Education
- Distefano; Feedback and Control System (Schaum); TMH
- B. S. Manke : Linear Control System (with MATLAB Application), Khanna Publishers.
- Ogata : Modern Control Engineering, PHI
- AK Mandal : An introduction to Control Engineering – Modeling, Analysis and Design, New Age International Publishers
